[Re] Inter-areal Balanced Amplification Enhances Signal Propagation in a Large-Scale Circuit Model of the Primate Cortex
A replication about signal propagation and balanced amplification in a large-scale primate-cortex circuit model; the metadata identifies NEST.
External publication. Published by its original venue; not published in our journal.
Which propagation statistic can be tested on a bounded network with an explicitly documented reduction from the published model?
An independent evaluator measures input/output response statistics and network size; reduced-model findings do not establish the full-scale claim.
What you could produce
- Versioned protocol, input and environment manifest, and independent per-case comparison table including uncertainty and incomplete cases.
Before you use it
- NEST (named in journal metadata; dependency version not checked)
Limits to keep in view
- No research code was executed; no independent scientific verification has been performed.
- The current qualified pilot is self-contained Python 3.13 with a 90-second author deadline. This article's environment has not been qualified for that path.
- Published source metadata and a historical review do not establish compatibility, successful reproduction, operator independence or current scientific correctness.
- Dependencies named in metadata are not available under the current standard-library-only pilot; a new qualified environment is required.
Source and permission context
Lima, Vinicius; Shimoura, Renan O.; Kamiji, Nilton L.; Battaglia, Demian; Roque, Antonio C.. [Re] Inter-areal Balanced Amplification Enhances Signal Propagation in a Large-Scale Circuit Model of the Primate Cortex. ReScience C 9(1), #3; 10.5281/zenodo.10257800.
Catalog listing reviewed. This review covers the description and source links displayed here.
ReScience/Zenodo metadata reviewed; exact CC-BY-4.0 evidence is manuscript-scoped.
Reviewed 2026-09-14. Copying or adapting source files remains subject to their own terms.
manuscript · CC-BY-4.0
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